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Treatment of coke oven wastewater in an anaerobic-anoxic-aerobic moving bed bioreactor system

机译:厌氧-好氧-好氧移动床生物反应器系统处理焦炉废水

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In this work, sequential moving bed bioreactor (MBBR) system with mixed heterogeneous biomass was selected for the treatment of coke oven wastewater (CW). The reactors were arranged in anaerobic (R1)-anoxic (R2)-aerobic (R3) sequence. CW was collected from an industrial site which contains phenol, ammonia, sulfate, iron, oil, and grease. Few heavy metals (cadmium, lead, and cobalt) were also detected in CW at low concentrations. Raw CW was pretreated by primary settling process to remove high solid concentrations. Thereafter, CW was spiked with synthetic pollutants to make the picture of model industrial wastewater. Phenol (1,350mg/L), ammonia-N (500mg/L), thiocyanate (800mg/L), pyridine (50mg/L), m-, o-, and p-cresols (50mg/L each) were added as synthetic pollutants in CW. The system was operated at 6d hydraulic retention time. R1 showed only less phenol (2-5%) and chemical oxygen demand (COD) (~2%) removal. However, R2 and R3 removed significant amount of thiocyanate (>85%), cresols (~88%), and pyridine (>48%) along with the residual phenol (R2: 88%; R3: 98%) and COD (R2: 58%; R3: 79%). Also, denitrification efficiency of R2 was ~94% throughout the study. Ammonia-N removal by R3 was 64-71% comprising 75-77% of total nitrogen removal. Hence, three stage sequential MBBR could be successfully used to treat high strength CW to achieve the discharge limit of effluent.
机译:在这项工作中,选择了混合异质生物质的顺序移动床生物反应器(MBBR)系统来处理焦炉废水(CW)。反应器以厌氧(R1)-缺氧(R2)-需氧(R3)顺序排列。从含有苯酚,氨,硫酸盐,铁,油和油脂的工业场所收集化学废物。在低浓度的连续水中也很少检测到重金属(镉,铅和钴)。通过初步沉降工艺对粗制连续水进行预处理,以去除高浓度的固体。此后,将化学污染物掺入化学废物中,以制作模型工业废水的图片。加入苯酚(1,350mg / L),氨氮(500mg / L),硫氰酸盐(800mg / L),吡啶(50mg / L),间甲酚,邻甲酚和对甲酚(各50mg / L) CW中的合成污染物。该系统在6d水力停留时间下运行。 R1仅显示较少的苯酚(2-5%)和化学需氧量(COD)(〜2%)去除。但是,R2和R3去除了大量的硫氰酸盐(> 85%),甲酚(〜88%)和吡啶(> 48%)以及残留的苯酚(R2:88%; R3:98%)和COD(R2 :58%; R3:79%)。另外,在整个研究过程中,R2的反硝化效率约为94%。通过R 3去除的氨氮为64-71%,占总氮去除的75-77%。因此,三级连续MBBR可以成功地用于处理高强度连续水,以达到废水的排放极限。

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